mirror of https://gitee.com/openkylin/linux.git
x509: Add support for parsing x509 certs with ECDSA keys
Add support for parsing of x509 certificates that contain ECDSA keys, such as NIST P256, that have been signed by a CA using any of the current SHA hash algorithms. Cc: David Howells <dhowells@redhat.com> Cc: keyrings@vger.kernel.org Signed-off-by: Stefan Berger <stefanb@linux.ibm.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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@ -14,6 +14,7 @@
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#include <linux/slab.h>
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#include <linux/seq_file.h>
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#include <linux/scatterlist.h>
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#include <linux/asn1.h>
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#include <keys/asymmetric-subtype.h>
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#include <crypto/public_key.h>
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#include <crypto/akcipher.h>
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@ -85,7 +86,8 @@ int software_key_determine_akcipher(const char *encoding,
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return n >= CRYPTO_MAX_ALG_NAME ? -EINVAL : 0;
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}
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if (strcmp(encoding, "raw") == 0) {
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if (strcmp(encoding, "raw") == 0 ||
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strcmp(encoding, "x962") == 0) {
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strcpy(alg_name, pkey->pkey_algo);
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return 0;
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}
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@ -227,6 +227,26 @@ int x509_note_pkey_algo(void *context, size_t hdrlen,
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ctx->cert->sig->hash_algo = "sha224";
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goto rsa_pkcs1;
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case OID_id_ecdsa_with_sha1:
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ctx->cert->sig->hash_algo = "sha1";
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goto ecdsa;
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case OID_id_ecdsa_with_sha224:
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ctx->cert->sig->hash_algo = "sha224";
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goto ecdsa;
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case OID_id_ecdsa_with_sha256:
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ctx->cert->sig->hash_algo = "sha256";
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goto ecdsa;
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case OID_id_ecdsa_with_sha384:
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ctx->cert->sig->hash_algo = "sha384";
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goto ecdsa;
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case OID_id_ecdsa_with_sha512:
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ctx->cert->sig->hash_algo = "sha512";
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goto ecdsa;
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case OID_gost2012Signature256:
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ctx->cert->sig->hash_algo = "streebog256";
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goto ecrdsa;
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@ -255,6 +275,11 @@ int x509_note_pkey_algo(void *context, size_t hdrlen,
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ctx->cert->sig->encoding = "raw";
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ctx->algo_oid = ctx->last_oid;
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return 0;
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ecdsa:
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ctx->cert->sig->pkey_algo = "ecdsa";
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ctx->cert->sig->encoding = "x962";
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ctx->algo_oid = ctx->last_oid;
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return 0;
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}
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/*
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@ -276,7 +301,8 @@ int x509_note_signature(void *context, size_t hdrlen,
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if (strcmp(ctx->cert->sig->pkey_algo, "rsa") == 0 ||
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strcmp(ctx->cert->sig->pkey_algo, "ecrdsa") == 0 ||
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strcmp(ctx->cert->sig->pkey_algo, "sm2") == 0) {
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strcmp(ctx->cert->sig->pkey_algo, "sm2") == 0 ||
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strcmp(ctx->cert->sig->pkey_algo, "ecdsa") == 0) {
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/* Discard the BIT STRING metadata */
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if (vlen < 1 || *(const u8 *)value != 0)
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return -EBADMSG;
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@ -478,6 +504,12 @@ int x509_extract_key_data(void *context, size_t hdrlen,
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case OID_sm2:
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ctx->cert->pub->pkey_algo = "sm2";
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break;
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case OID_id_prime192v1:
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ctx->cert->pub->pkey_algo = "ecdsa-nist-p192";
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break;
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case OID_id_prime256v1:
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ctx->cert->pub->pkey_algo = "ecdsa-nist-p256";
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break;
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default:
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return -ENOPKG;
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}
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@ -129,7 +129,9 @@ int x509_check_for_self_signed(struct x509_certificate *cert)
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}
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ret = -EKEYREJECTED;
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if (strcmp(cert->pub->pkey_algo, cert->sig->pkey_algo) != 0)
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if (strcmp(cert->pub->pkey_algo, cert->sig->pkey_algo) != 0 &&
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(strncmp(cert->pub->pkey_algo, "ecdsa-", 6) != 0 ||
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strcmp(cert->sig->pkey_algo, "ecdsa") != 0))
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goto out;
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ret = public_key_verify_signature(cert->pub, cert->sig);
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@ -20,6 +20,8 @@ enum OID {
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OID_id_dsa_with_sha1, /* 1.2.840.10030.4.3 */
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OID_id_dsa, /* 1.2.840.10040.4.1 */
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OID_id_ecPublicKey, /* 1.2.840.10045.2.1 */
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OID_id_prime192v1, /* 1.2.840.10045.3.1.1 */
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OID_id_prime256v1, /* 1.2.840.10045.3.1.7 */
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OID_id_ecdsa_with_sha1, /* 1.2.840.10045.4.1 */
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OID_id_ecdsa_with_sha224, /* 1.2.840.10045.4.3.1 */
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OID_id_ecdsa_with_sha256, /* 1.2.840.10045.4.3.2 */
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